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    • 1. 发明申请
    • Apparatus, system and method for measuring stress
    • 用于测量应力的装置,系统和方法
    • US20080216582A1
    • 2008-09-11
    • US11713961
    • 2007-03-05
    • Larry M. OberdierBruno LequesneElias TayeThaddeus Schroeder
    • Larry M. OberdierBruno LequesneElias TayeThaddeus Schroeder
    • G01M5/00H01L41/00
    • G01L1/125
    • A system for measuring stress including a coilless sensor including at least one band of electrically conductive and magnetostrictive material, the band having a first end and a second end defining a gap therebetween, a measuring circuit electrically connected to the first and second ends of the coilless sensor, the measuring circuit being configured to pass a current through the coilless sensor and measure at least one of an inductance, a resistance and an impedance of the coilless sensor in response to the current, and a processor in electrical communication with the measuring circuit, the processor being configured to calculate an amount of stress being applied to the coilless sensor based upon the measured inductance, resistance and impedance.
    • 一种用于测量应力的系统,包括无电感传感器,其包括至少一个导电和磁致伸缩材料带,所述带具有第一端和限定其间的间隙的第二端;测量电路,电连接到无铁芯的第一和第二端 传感器,所述测量电路被配置为使电流通过所述无芯焊传感器并响应于所述电流测量所述无连续传感器的电感,电阻和阻抗中的至少一个,以及与所述测量电路电连通的处理器, 所述处理器被配置为基于所测量的电感,电阻和阻抗来计算施加到所述无芯体传感器的应力的量。
    • 2. 发明申请
    • Magnetostrictive strain sensor (airgap control)
    • 磁致伸缩应变传感器(气隙控制)
    • US20080168844A1
    • 2008-07-17
    • US11653682
    • 2007-01-16
    • Bruno LequesneElias TayeThaddeus Schroeder
    • Bruno LequesneElias TayeThaddeus Schroeder
    • G01B7/24G01L1/12
    • G01L9/16G01L1/125G01L1/127
    • The present invention is directed to a strain sensor comprising a monolithic magnetostrictive material core wherein the permeability of the material depends on stress, the core having an aperture therein and a coil wound about the core and through the aperture. The core and the coil being configured such that when the coil is connected in circuit, it establishes a loop of magnetic flux that circulates through the core and about the coil whereby impedance of the core is measured. Impedance being a general term including inductance, resistance and a combination of the two. Various configurations for the core are disclosed and integrated housing is also taught. The present sensor can be used to sense force, pressure, torque, acceleration and combinations thereof. The present device can be utilized to sense pressure of diesel fuel in diesel engines, oil pressure, hydraulic pressure, and earth moving and construction vehicles, etc. The sensor can be integrated in a threaded plug and is adaptable to be included in pipe made of magnetostrictive material. A method is also taught in the present application.
    • 本发明涉及包括单片磁致伸缩材料芯的应变传感器,其中该材料的磁导率取决于应力,该芯在其中具有孔径,以及缠绕在芯上并通过该孔的线圈。 芯和线圈被配置成使得当线圈连接在电路中时,其建立一个磁通环,其环绕磁芯和绕线圈循环,从而测量磁芯的阻抗。 阻抗是包括电感,电阻和两者的组合的通用术语。 公开了用于芯的各种配置,并且还教导了集成的外壳。 本传感器可用于感测力,压力,扭矩,加速度及其组合。 本发明的装置可用于感测柴油发动机,油压,液压和地球运动和施工车辆等中的柴油燃料的压力。传感器可以集成在螺纹塞中,并且适于包括在由 磁致伸缩材料。 在本申请中还教导了一种方法。
    • 6. 发明申请
    • Camshaft phaser having a differential bevel gear system
    • 具有差速锥齿轮系统的凸轮轴相位器
    • US20080087241A1
    • 2008-04-17
    • US11582087
    • 2006-10-17
    • Elias TayeThomas H. LichtiDaniel R. CuattBruno Lequesne
    • Elias TayeThomas H. LichtiDaniel R. CuattBruno Lequesne
    • F01L1/34
    • F01L1/352F01L1/024Y10T74/19
    • A camshaft phaser comprising a differential bevel gear arrangement to vary the phase relationship of a camshaft to a crankshaft in an internal combustion engine. In the differential gear system, a 45° beveled input gear is mounted parallel to and coaxial with a 45° beveled output gear. One or more 45° beveled spider gears is disposed in meshed relationship with the input and output gears in a gear pattern having a rectangular cross-sectional appearance. Rotation of the input gear causes an opposite rotation of the output gear. The phase relationship between the input and output gears may be varied by varying the position of the spider gear. The input gear and spider gears may be driven via a sprocket in time with the crankshaft in a plurality of arrangements.
    • 一种凸轮轴相移器,包括用于改变内燃机中的凸轮轴与曲轴的相位关系的差速锥齿轮装置。 在差速齿轮系统中,45°斜面输入齿轮与45°斜面输出齿轮并联安装并与其同轴。 一个或多个45°斜角齿轮与具有矩形横截面外观的齿轮图案中的输入和输出齿轮呈啮合关系。 输入齿轮的旋转会导致输出齿轮的相反旋转。 输入和输出齿轮之间的相位关系可以通过改变蜘蛛齿轮的位置来改变。 输入齿轮和齿轮可以通过链轮在多个布置中与曲轴一起被驱动。
    • 8. 发明授权
    • Apparatus, system and method for measuring stress
    • 用于测量应力的装置,系统和方法
    • US07523671B2
    • 2009-04-28
    • US11713961
    • 2007-03-05
    • Larry M. OberdierBruno LequesneElias TayeThaddeus Schroeder
    • Larry M. OberdierBruno LequesneElias TayeThaddeus Schroeder
    • G01L1/00G01L1/12
    • G01L1/125
    • A system for measuring stress including a coilless sensor including at least one band of electrically conductive and magnetostrictive material, the band having a first end and a second end defining a gap therebetween, a measuring circuit electrically connected to the first and second ends of the coilless sensor, the measuring circuit being configured to pass a current through the coilless sensor and measure at least one of an inductance, a resistance and an impedance of the coilless sensor in response to the current, and a processor in electrical communication with the measuring circuit, the processor being configured to calculate an amount of stress being applied to the coilless sensor based upon the measured inductance, resistance and impedance.
    • 一种用于测量应力的系统,包括无电感传感器,其包括至少一个导电和磁致伸缩材料带,所述带具有第一端和限定其间的间隙的第二端;测量电路,电连接到无铁芯的第一和第二端 传感器,所述测量电路被配置为使电流通过所述无芯焊传感器并响应于所述电流测量所述无连续传感器的电感,电阻和阻抗中的至少一个,以及与所述测量电路电连通的处理器, 所述处理器被配置为基于所测量的电感,电阻和阻抗来计算施加到所述无芯体传感器的应力的量。
    • 10. 发明申请
    • Harmonic drive camshaft phaser
    • 谐波驱动凸轮轴相位器
    • US20080047511A1
    • 2008-02-28
    • US11507758
    • 2006-08-22
    • Elias TayeBruno Lequesne
    • Elias TayeBruno Lequesne
    • F01L1/34
    • F01L1/344F01L1/352F01L2001/3521F01L2820/032F16H35/008F16H49/001Y10T74/19
    • A camshaft phaser comprising first and second harmonic gear drive (HD) units disposed in back-to-back relationship. Each HD includes an elliptical wave generator (WG), a flexspline (FS) deformable by the WG, and a circular spline (CS) for engaging the FS. A dynamic spline (DS) connects the first and second FSs. The first HD is an input HD driven by an engine crankshaft via a sprocket wheel connected to the input CS. The second HD is an output HD driving an engine camshaft. The DS is meshed with both the input FS and the output FS. The phase relationship between the crankshaft and the camshaft may be changed by changing the angular relationship between the first and second WGs. Such change is effected by holding the first WG stationary and varying the angular position of the second WG via an electric motor.
    • 一种凸轮轴相位器,包括以背对背关系设置的第一和第二谐波齿轮传动(HD)单元。 每个HD包括椭圆波发生器(WG),由WG可变形的弹性线(FS)和用于接合FS的圆形花键(CS)。 动态样条(DS)连接第一和第二FS。 第一HD是通过连接到输入CS的链轮驱动的由发动机曲轴驱动的输入HD。 第二HD是驱动发动机凸轮轴的输出HD。 DS与输入FS和输出FS进行网格化。 可以通过改变第一和第二WG之间的角度关系来改变曲轴和凸轮轴之间的相位关系。 这样的改变是通过保持第一WG固定并通过电动机改变第二WG的角位置来实现的。